Patents by Inventor André Prager

André Prager has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20190197646
    Abstract: Example implementations relate to a method of dynamically updating a transport task of a UAV. The method includes receiving, at a transport-provider computing system, an item provider request for transportation of a plurality of packages from a loading location at a given future time. The method also includes assigning, by the transport-provider computing system, a respective transport task to each of a plurality of UAVs, where the respective transport task comprises an instruction to deploy to the loading location to pick up one or more of the plurality of packages. Further, the method includes identifying, by the transport-provider system, a first package while or after a first UAV picks up the first package. Yet further, the method includes based on the identifying of the first package, providing, by the transport-provider system, a task update to the first UAV to update the respective transport task of the first UAV.
    Type: Application
    Filed: December 21, 2017
    Publication date: June 27, 2019
    Inventors: André Prager, Gaurav Garg, Jonathan Lesser, Theran Cochran
  • Publication number: 20190185158
    Abstract: Example implementations may relate to self-deployment of operational infrastructure by an unmanned aerial vehicle (UAV). Specifically, a control system may determine operational location(s) from which a group of UAVs is to provide aerial transport services in a geographic area. For at least a first of the operational location(s), the system may cause a first UAV from the group to perform an infrastructure deployment task that includes (i) a flight from a source location to the first operational location and (ii) installation of operational infrastructure at the first operational location by the first UAV. In turn, this may enable the first UAV to operate from the first operational location, as the first UAV can charge a battery of the first UAV using the operational infrastructure installed at the first operational location and/or can carry out item transport task(s) at location(s) that are in the vicinity of the first operational location.
    Type: Application
    Filed: December 20, 2017
    Publication date: June 20, 2019
    Inventors: Jesse Blake, James Schmalzried, Siegfried Zerweckh, Andre Prager, Scott Velez
  • Publication number: 20190185157
    Abstract: Example implementations may relate to using an unmanned aerial vehicle (UAV) dedicated to deployment of operational infrastructure, with such deployment enabling charging of a battery of a UAV from a group of UAVs. More specifically, the group of UAVs may include at least (i) a first UAV of a first type configured to deploy operational infrastructure and (ii) a second UAV of a second type configured to carry out a task other than deployment of operational infrastructure. With this arrangement, a control system may determine an operational location at which to deploy operational infrastructure, and may cause the first UAV to deploy operational infrastructure at the operational location. Then, the control system may cause the second UAV to charge a battery of the second UAV using the operational infrastructure deployed by the first UAV at the operational location.
    Type: Application
    Filed: December 20, 2017
    Publication date: June 20, 2019
    Inventors: Jesse Blake, James Schmalzried, Siegfried Zerweckh, Andre Prager, Scott Velez
  • Publication number: 20190189016
    Abstract: A computer implemented method of distributing noise exposures to unmanned aerial vehicles (UAVs) over a neighborhood includes: receiving flight routing requests to fly the UAVs over the neighborhood; accessing a noise exposure map stored in a noise exposure database in response to the flight routing requests; and generating new flight paths for the UAVs over the neighborhood that load level additional noise exposures that the new flight paths will contribute to the noise exposure map. The noise exposure map includes noise exposure values indexed to properties within the neighborhood. The noise exposure values quantify cumulative noise exposures of the properties due to historical flight paths of the UAVs over the neighborhood.
    Type: Application
    Filed: December 20, 2017
    Publication date: June 20, 2019
    Inventors: Martin Kubie, Adam Woodworth, Jesse Blake, Reinaldo Negron, James Burgess, André Prager, Stephen Lacy, Giulia Pantalone
  • Publication number: 20190185162
    Abstract: A payload retrieval system including a UAV having a payload receptacle positioned within the UAV, a payload coupling apparatus positioned within the payload receptacle, a tether having a first end secured within the UAV and a second end attached to the payload coupling apparatus, and a payload guiding member positioned on an underside of the UAV for guiding at least part of a payload into the payload receptacle during retrieval of a payload.
    Type: Application
    Filed: December 19, 2017
    Publication date: June 20, 2019
    Inventors: Andre Prager, Trevor Shannon, Zhefei Li
  • Publication number: 20190161153
    Abstract: Systems and methods for assembling Unmanned Autonomous Vehicle (UAV) are disclosed herein. In one embodiment, a method for assembling a UAV includes connecting a wing spar with boom carriers to form an H-frame. The wing spar provides mounting locations for securing horizontal propulsion units, and the boom carriers provide mounting locations for securing vertical propulsion units. The method also includes attaching a fuselage body to the wing spar; attaching a pre-formed wing shell to the H-frame; and attaching pre-formed individual boom shells to their corresponding boom carriers. The H-frame provides structural frame for mounting the wing shell and the boom shells.
    Type: Application
    Filed: November 27, 2017
    Publication date: May 30, 2019
    Inventors: Adam Woodworth, Adem Rudin, Stephen Benson, James Schmalzried, Kyle Liske, Jesse Blake, André Prager, Nicolas Renold, Thorsten Schilling
  • Publication number: 20190152604
    Abstract: Described herein are methods and systems for picking up, transporting, and lowering a payload coupled to a tether of a winch system arranged on an unmanned aerial vehicle (UAV). For example, the winch system may include a motor for winding and unwinding the tether from a spool, and the UAV's control system may operate the motor to lower the tether toward the ground so a payload may be attached to the tether. The control system may monitor an electric current supplied to the motor to determine whether the payload has been attached to the tether. In another example, when lowering a payload, the control system may monitor the motor current to determine that the payload has reached the ground and responsively operate the motor to detach the payload from the tether. The control system may then monitor the motor current to determine whether the payload has detached from the tether.
    Type: Application
    Filed: January 24, 2019
    Publication date: May 23, 2019
    Inventors: Trevor Shannon, Andre Prager
  • Patent number: 10266266
    Abstract: An apparatus may include (i) a support structure, (ii) at least one shaft coupled to the support structure via at least one swing arm, wherein the swing arm allows upward movement, and restricts downward movement, of the at least one shaft from a resting position, (iii) a spool, wherein in the spool is shaped so as to rest on the at least one shaft when the at least one shaft is in the resting position, and wherein the spool is operable to unwind a tether coupled to a payload, and (iv) at least one fan coupled to the at least one shaft, wherein rotation of the spool when unwinding the tether also causes rotation of the at least one fan coupled to the at least one shaft, thereby controlling a descent rate of the payload.
    Type: Grant
    Filed: May 23, 2016
    Date of Patent: April 23, 2019
    Assignee: Wing Aviation LLC
    Inventors: Clark Sopper, André Prager
  • Publication number: 20190106192
    Abstract: A modular fuselage for an unmanned aerial vehicle (UAV) includes a battery module, an avionics module, and a mission payload module. The battery module houses a battery to power the UAV. The avionics module houses flight control circuitry of the UAV. The mission payload module houses equipment associated with a mission of the UAV. The battery module, the avionics module, and the mission payload module are detachable from each other and mechanically securable to each other to contiguously form at least a portion of the modular fuselage of the UAV.
    Type: Application
    Filed: October 11, 2017
    Publication date: April 11, 2019
    Inventors: Adam Woodworth, Adem Rudin, Stephen Benson, James Schmalzried, Kyle Liske, Jesse Blake, André Prager, Nicolas Renold, Evan Twyford
  • Publication number: 20190100314
    Abstract: A payload coupling apparatus is provided that includes a housing. The housing is adapted for attachment to a first end of a tether. The apparatus further includes a slot extending downwardly from an outer surface of the housing towards a center of the housing thereby forming a lower lip on the housing beneath the slot. The slot is adapted to receive a handle of a payload. The apparatus further includes a sensor configured to detect touchdown of the payload and a transmitter configured to send a touchdown confirmation signal to an unmanned aerial vehicle (UAV) based on a touchdown detection by the sensor.
    Type: Application
    Filed: December 22, 2017
    Publication date: April 4, 2019
    Inventors: Andre Prager, Trevor Shannon, Evan Twyford, Alexander Miller
  • Patent number: 10232940
    Abstract: Described herein are methods and systems for picking up, transporting, and lowering a payload coupled to a tether of a winch system arranged on an unmanned aerial vehicle (UAV). For example, the winch system may include a motor for winding and unwinding the tether from a spool, and the UAV's control system may operate the motor to lower the tether toward the ground so a payload may be attached to the tether. The control system may monitor an electric current supplied to the motor to determine whether the payload has been attached to the tether. In another example, when lowering a payload, the control system may monitor the motor current to determine that the payload has reached the ground and responsively operate the motor to detach the payload from the tether. The control system may then monitor the motor current to determine whether the payload has detached from the tether.
    Type: Grant
    Filed: December 22, 2016
    Date of Patent: March 19, 2019
    Assignee: Wing Aviation LLC
    Inventors: Trevor Shannon, Andre Prager
  • Publication number: 20180257779
    Abstract: Described herein are methods and systems for detecting and correcting errors when picking up and lowering a payload coupled to a tether of a winch system arranged on an unmanned aerial vehicle (UAV). For example, the winch system may include a motor for winding and unwinding the tether from a spool, and the UAV's control system may control the motor to lower the tether and monitor an electric current supplied to the motor to determine whether a payload has detached from the tether. This process of lowering the tether and monitoring the motor current may be repeated up to a predetermined number of times, at which point the control system may operate the motor to detach the tether from the spool, leaving both the tether and the payload behind.
    Type: Application
    Filed: May 11, 2018
    Publication date: September 13, 2018
    Inventors: Trevor Shannon, Andre Prager
  • Patent number: 10035623
    Abstract: A package enclosure for use on an aerial vehicle including an outer skin having left and right side walls and a front end and a rear end, a base positioned within the outer skin exerting a force against inner surfaces of the left and right side walls of the outer skin, and a handle upwardly extending from the base.
    Type: Grant
    Filed: August 19, 2016
    Date of Patent: July 31, 2018
    Assignee: X Development LLC
    Inventors: Andre Prager, Clark Sopper, Kyle A. Liske
  • Patent number: 10000285
    Abstract: Described herein are methods and systems for detecting and correcting errors when picking up and lowering a payload coupled to a tether of a winch system arranged on an unmanned aerial vehicle (UAV). For example, the winch system may include a motor for winding and unwinding the tether from a spool, and the UAV's control system may control the motor to lower the tether and monitor an electric current supplied to the motor to determine whether a payload has detached from the tether. This process of lowering the tether and monitoring the motor current may be repeated up to a predetermined number of times, at which point the control system may operate the motor to detach the tether from the spool, leaving both the tether and the payload behind.
    Type: Grant
    Filed: December 22, 2016
    Date of Patent: June 19, 2018
    Assignee: X Development LLC
    Inventors: Trevor Shannon, Andre Prager
  • Publication number: 20180072422
    Abstract: Described herein are methods and systems for picking up, transporting, and lowering a payload coupled to a tether of a winch system arranged on an unmanned aerial vehicle (UAV). For example, the winch system may include a motor for winding and unwinding the tether from a spool, and the UAV's control system may operate the motor to lower the tether toward the ground so a payload may be attached to the tether. The control system may monitor an electric current supplied to the motor to determine whether the payload has been attached to the tether. In another example, when lowering a payload, the control system may monitor the motor current to determine that the payload has reached the ground and responsively operate the motor to detach the payload from the tether. The control system may then monitor the motor current to determine whether the payload has detached from the tether.
    Type: Application
    Filed: December 22, 2016
    Publication date: March 15, 2018
    Inventors: Trevor Shannon, Andre Prager
  • Publication number: 20180072420
    Abstract: A payload coupling apparatus is provided including a housing, wherein the housing is adapted for attachment to a first end of a tether, a slot extending downwardly from an outer surface of the housing towards a center of the housing thereby forming a lower lip on the housing beneath the slot, and wherein the slot is adapted to receive a handle of a payload.
    Type: Application
    Filed: December 22, 2016
    Publication date: March 15, 2018
    Inventors: Andre Prager, Trevor Shannon
  • Publication number: 20180072417
    Abstract: Described herein are methods and systems for detecting and correcting errors when picking up and lowering a payload coupled to a tether of a winch system arranged on an unmanned aerial vehicle (UAV). For example, the winch system may include a motor for winding and unwinding the tether from a spool, and the UAV's control system may control the motor to lower the tether and monitor an electric current supplied to the motor to determine whether a payload has detached from the tether. This process of lowering the tether and monitoring the motor current may be repeated up to a predetermined number of times, at which point the control system may operate the motor to detach the tether from the spool, leaving both the tether and the payload behind.
    Type: Application
    Filed: December 22, 2016
    Publication date: March 15, 2018
    Inventors: Trevor Shannon, Andre Prager
  • Publication number: 20180072404
    Abstract: Described herein are methods and systems to dampen oscillations of a payload coupled to a tether of a winch system arranged on an unmanned aerial vehicle (UAV). For example, the UAV's control system may dampen the oscillations by causing the UAV to switch to a forward flight mode in which movement of the UAV results in drag on the payload, thereby damping the oscillations. In another example, the control system may cause the UAV to reduce an extent flight stabilization along at least one dimension, thereby resulting in damping of the detected oscillations due to energy dissipation during movement of the UAV along the dimension. In this way, the control system could select and carry out one or more such techniques, and could do so during retraction and/or deployment of the tether.
    Type: Application
    Filed: December 22, 2016
    Publication date: March 15, 2018
    Inventors: Andre Prager, Trevor Shannon
  • Publication number: 20180072418
    Abstract: An unmanned aerial vehicle system is provided including an unmanned aerial vehicle (UAV) having a fuselage, a tether having a first end secured to a winch system positioned in the UAV and a second end secured to a payload coupling apparatus, a payload coupling apparatus receptacle positioned in the fuselage of the UAV, a payload having a handle, wherein the handle of the payload is positioned within a slot in the payload coupling apparatus. A method of securing a payload to a UAV is also provided.
    Type: Application
    Filed: December 22, 2016
    Publication date: March 15, 2018
    Inventors: Trevor Shannon, Andre Prager, Zhefei Li, Kyle Liske
  • Patent number: D852092
    Type: Grant
    Filed: October 12, 2017
    Date of Patent: June 25, 2019
    Assignee: Wing Aviation LLC
    Inventors: Adam Woodworth, Adem Rudin, Stephen Benson, James Schmalzried, Kyle Liske, Jesse Blake, André Prager, Nicolas Renold, Evan Twyford, Clark Sopper